An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network

A heterogeneous distributed sensor network (HDSN) is a type of distributed sensor network where sensors with different deployment groups and different functional types participate at the same time. In other words, the sensors are divided into different deployment groups according to different types...

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Main Authors: Pathan, Al-Sakib Khan, Monowar, Muhammad Mostafa, Jiang, Jinfang, Lei, Shu, Han, Guangjie
Format: Article
Language:English
Published: Wiley-Blackwell 2011
Subjects:
Online Access:http://irep.iium.edu.my/1331/
http://irep.iium.edu.my/1331/
http://irep.iium.edu.my/1331/1/WILEY_PAPER-DOI_10.1002sec.277.pdf
id iium-1331
recordtype eprints
spelling iium-13312012-05-06T07:08:43Z http://irep.iium.edu.my/1331/ An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network Pathan, Al-Sakib Khan Monowar, Muhammad Mostafa Jiang, Jinfang Lei, Shu Han, Guangjie Q Science (General) QA76 Computer software A heterogeneous distributed sensor network (HDSN) is a type of distributed sensor network where sensors with different deployment groups and different functional types participate at the same time. In other words, the sensors are divided into different deployment groups according to different types of data transmissions, but they cooperate with each other within and out of their respective groups. However, in traditional heterogeneous sensor networks, the classification is based on transmission range, energy level, computation ability, and sensing range. Taking this model into account, we propose a secure group association authentication mechanism using one-way accumulator which ensures that: before collaborating for a particular task, any pair of nodes in the same deployment group can verify the legitimacy of group association of each other. Secure addition and deletion of sensors are also supported in this approach. In addition, a policy-based sensor addition procedure is also suggested. For secure handling of disconnected nodes of a group, we use an efficient pairwise key derivation scheme to resist any adversary’s attempt. Along with proposing our mechanism, we also discuss the characteristics of HDSN, its scopes, applicability, future, and challenges. The efficiency of our security management approach is also demonstrated with performance evaluation and analysis. Wiley-Blackwell 2011 Article PeerReviewed application/pdf en http://irep.iium.edu.my/1331/1/WILEY_PAPER-DOI_10.1002sec.277.pdf Pathan, Al-Sakib Khan and Monowar, Muhammad Mostafa and Jiang, Jinfang and Lei, Shu and Han, Guangjie (2011) An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network. Security and Communication Networks. ISSN 1939-0122 http://onlinelibrary.wiley.com/doi/10.1002/sec.277/pdf
repository_type Digital Repository
institution_category Local University
institution International Islamic University Malaysia
building IIUM Repository
collection Online Access
language English
topic Q Science (General)
QA76 Computer software
spellingShingle Q Science (General)
QA76 Computer software
Pathan, Al-Sakib Khan
Monowar, Muhammad Mostafa
Jiang, Jinfang
Lei, Shu
Han, Guangjie
An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
description A heterogeneous distributed sensor network (HDSN) is a type of distributed sensor network where sensors with different deployment groups and different functional types participate at the same time. In other words, the sensors are divided into different deployment groups according to different types of data transmissions, but they cooperate with each other within and out of their respective groups. However, in traditional heterogeneous sensor networks, the classification is based on transmission range, energy level, computation ability, and sensing range. Taking this model into account, we propose a secure group association authentication mechanism using one-way accumulator which ensures that: before collaborating for a particular task, any pair of nodes in the same deployment group can verify the legitimacy of group association of each other. Secure addition and deletion of sensors are also supported in this approach. In addition, a policy-based sensor addition procedure is also suggested. For secure handling of disconnected nodes of a group, we use an efficient pairwise key derivation scheme to resist any adversary’s attempt. Along with proposing our mechanism, we also discuss the characteristics of HDSN, its scopes, applicability, future, and challenges. The efficiency of our security management approach is also demonstrated with performance evaluation and analysis.
format Article
author Pathan, Al-Sakib Khan
Monowar, Muhammad Mostafa
Jiang, Jinfang
Lei, Shu
Han, Guangjie
author_facet Pathan, Al-Sakib Khan
Monowar, Muhammad Mostafa
Jiang, Jinfang
Lei, Shu
Han, Guangjie
author_sort Pathan, Al-Sakib Khan
title An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
title_short An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
title_full An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
title_fullStr An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
title_full_unstemmed An efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
title_sort efficient approach of secure group association management in densely deployed heterogeneous distributed sensor network
publisher Wiley-Blackwell
publishDate 2011
url http://irep.iium.edu.my/1331/
http://irep.iium.edu.my/1331/
http://irep.iium.edu.my/1331/1/WILEY_PAPER-DOI_10.1002sec.277.pdf
first_indexed 2023-09-18T20:08:36Z
last_indexed 2023-09-18T20:08:36Z
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